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Publication : Regulating the dorsal neural tube expression of Ptf1a through a distal 3' enhancer.

First Author  Mona B Year  2016
Journal  Dev Biol Volume  418
Issue  1 Pages  216-225
PubMed ID  27350561 Mgi Jnum  J:236413
Mgi Id  MGI:5806024 Doi  10.1016/j.ydbio.2016.06.033
Citation  Mona B, et al. (2016) Regulating the dorsal neural tube expression of Ptf1a through a distal 3' enhancer. Dev Biol 418(1):216-25
abstractText  Generating the correct balance of inhibitory and excitatory neurons in a neural network is essential for normal functioning of a nervous system. The neural network in the dorsal spinal cord functions in somatosensation where it modulates and relays sensory information from the periphery. PTF1A is a key transcriptional regulator present in a specific subset of neural progenitor cells in the dorsal spinal cord, cerebellum and retina that functions to specify an inhibitory neuronal fate while suppressing excitatory neuronal fates. Thus, the regulation of Ptf1a expression is critical for determining mechanisms controlling neuronal diversity in these regions of the nervous system. Here we identify a sequence conserved, tissue-specific enhancer located 10.8kb 3' of the Ptf1a coding region that is sufficient to direct expression to dorsal neural tube progenitors that give rise to neurons in the dorsal spinal cord in chick and mouse. DNA binding motifs for Paired homeodomain (Pd-HD) and zinc finger (ZF) transcription factors are required for enhancer activity. Mutations in these sequences implicate the Pd-HD motif for activator function and the ZF motif for repressor function. Although no repressor transcription factor was identified, both PAX6 and SOX3 can increase enhancer activity in reporter assays. Thus, Ptf1a is regulated by active and repressive inputs integrated through multiple sequence elements within a highly conserved sequence downstream of the Ptf1a gene.
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